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一种用于研究龟小脑红核脊髓回路中运动模式生成的体外制备方法。

An in vitro preparation for studying motor pattern generation in the cerebellorubrospinal circuit of the turtle.

作者信息

Keifer J, Houk J C

机构信息

Department of Physiology, Northwestern University Medical School, Chicago, IL 60611.

出版信息

Neurosci Lett. 1989 Feb 13;97(1-2):123-8. doi: 10.1016/0304-3940(89)90150-x.

Abstract

In vivo studies in mammals have suggested that the cerebellorubrospinal circuit functions as a recurrent excitatory loop that generates motor commands and transmits them to the spinal cord via the rubrospinal pathway. Here we describe an in vitro preparation from the turtle exhibiting functional synaptic connections between the cerebellum, brainstem and upper spinal cord that is suitable for detailed analysis of this circuit. Electrical stimulation of the spinal cord was used to activate the cerebellorubrospinal circuit while activity was sampled with extracellular recordings from single cells in the red nucleus. Single units responded to stimulation with short and long latency synaptic responses, in addition to antidromic activation. Some cells showed bursts of activity lasting several hundred milliseconds suggesting the presence of recurrent excitation. Interruption of Purkinje cell inhibitory input impinging on the cerebellorubrospinal loop prolonged bursting and enhanced spontaneous activity. This preparation should facilitate the examination of the role of the cerebellorubrospinal circuit in motor pattern generation.

摘要

在哺乳动物身上进行的体内研究表明,小脑红核脊髓回路作为一个反复性兴奋环路发挥作用,该环路产生运动指令并通过红核脊髓通路将其传递至脊髓。在此,我们描述了一种来自乌龟的体外制备物,其展示了小脑、脑干和脊髓上部之间的功能性突触连接,适合对该回路进行详细分析。脊髓电刺激用于激活小脑红核脊髓回路,同时通过对红核中单个细胞进行细胞外记录来采集活动。单个神经元除了出现逆向激活外,还对刺激产生短潜伏期和长潜伏期的突触反应。一些细胞表现出持续数百毫秒的活动爆发,提示存在反复性兴奋。阻断浦肯野细胞对小脑红核脊髓环路的抑制性输入会延长爆发并增强自发活动。这种制备物应有助于研究小脑红核脊髓回路在运动模式生成中的作用。

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